生物
DNA甲基化
数量性状位点
遗传学
染色质免疫沉淀
差异甲基化区
表型
基因
表观遗传学
全基因组关联研究
CpG站点
染色质
单核苷酸多态性
基因表达
基因型
发起人
作者
Johann S. Hawe,Rory Wilson,Katharina T. Schmid,Li Zhou,Lakshmi Narayanan Lakshmanan,Benjamin Lehne,Brigitte Kühnel,William R. Scott,Matthias Wielscher,Yik Weng Yew,Clemens Baumbach,Dominic Paul Lee,Eirini Marouli,Manon Bernard,Liliane Pfeiffer,Pamela R. Matías‐García,Matias Autio,Stéphane Bourgeois,Christian Herder,Ville Karhunen
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2022-01-01
卷期号:54 (1): 18-29
被引量:97
标识
DOI:10.1038/s41588-021-00969-x
摘要
We determined the relationships between DNA sequence variation and DNA methylation using blood samples from 3,799 Europeans and 3,195 South Asians. We identify 11,165,559 SNP–CpG associations (methylation quantitative trait loci (meQTL), P < 10−14), including 467,915 meQTL that operate in trans. The meQTL are enriched for functionally relevant characteristics, including shared chromatin state, High-throuhgput chromosome conformation interaction, and association with gene expression, metabolic variation and clinical traits. We use molecular interaction and colocalization analyses to identify multiple nuclear regulatory pathways linking meQTL loci to phenotypic variation, including UBASH3B (body mass index), NFKBIE (rheumatoid arthritis), MGA (blood pressure) and COMMD7 (white cell counts). For rs6511961 , chromatin immunoprecipitation followed by sequencing (ChIP–seq) validates zinc finger protein (ZNF)333 as the likely trans acting effector protein. Finally, we used interaction analyses to identify population- and lineage-specific meQTL, including rs174548 in FADS1, with the strongest effect in CD8+ T cells, thus linking fatty acid metabolism with immune dysregulation and asthma. Our study advances understanding of the potential pathways linking genetic variation to human phenotype. Genome-wide association analyses of DNA methylation in peripheral blood from 3,799 Europeans and 3,195 South Asians identify unique SNP–CpG associations (meQTL), providing insights into molecular mechanisms and the potential links to phenotypic variation.
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